A Precursor Plateau and Pre-Maximum [O II] Emission in the Superluminous SN2019szu: A Pulsational Pair-Instability Candidate
arXiv:2307.02487 · doi:10.1093/mnras/stad3776
Abstract
We present a detailed study on SN2019szu, a Type I superluminous supernova at , that displayed unique photometric and spectroscopic properties. Pan-STARRS and ZTF forced photometry shows a pre-explosion plateau lasting 40 days. Unlike other SLSNe that show decreasing photospheric temperatures with time, the optical colours show an apparent temperature increase from 15000 K to 20000 K over the first 70 days, likely caused by an additional pseudo-continuum in the spectrum. Remarkably, the spectrum displays a forbidden emission line even during the rising phase of the light curve, inconsistent with an apparently compact photosphere. We show that this early feature is [O II] 7320,7330. We also see evidence for [O III] 4959, 5007, and [O III] 4363 further strengthening this line identification. Comparing with models for nebular emission, we find that the oxygen line fluxes and ratios can be reproduced with 0.25 M of oxygen rich material with a density of . The low density suggests a circumstellar origin, but the early onset of the emission lines requires that this material was ejected within the final months before the terminal explosion, consistent with the timing of the precursor plateau. Interaction with denser material closer to the explosion likely produced the pseudo-continuum bluewards of 5500 Å. We suggest that this event is one of the best candidates to date for a pulsational pair-instability ejection, with early pulses providing the low density material needed for the forbidden emission line, and collisions between the final shells of ejected material producing the pre-explosion plateau.
Accepted for publication in MNRAS
References in corpus (32)
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- The Zwicky Transient Facility: Data Processing, Products, and Archive
- Physical Properties of Wolf-Rayet Stars
- Pulsational Pair-Instability Supernovae
- Pulsational pair instability as an explanation for the most luminous supernovae
- A giant outburst two years before the core-collapse of a massive star
- PESSTO : survey description and products from the first data release by the Public ESO Spectroscopic Survey of Transient Objects
- The magnetar model for Type I superluminous supernovae I: Bayesian analysis of the full multicolour light curve sample with MOSFiT
- Spectroscopy of superluminous supernova host galaxies. A preference of hydrogen-poor events for extreme emission line galaxies
- Binospec: A Wide-field Imaging Spectrograph for the MMT
- Hydrogen-Poor Superluminous Supernovae from the Pan-STARRS1 Medium Deep Survey
- Superluminous supernova 2015bn in the nebular phase: evidence for the engine-powered explosion of a stripped massive star
- The Type Icn SN 2021csp: Implications for the Origins of the Fastest Supernovae and the Fates of Wolf-Rayet Stars
- The host galaxy of the super-luminous SN 2010gx and limits on explosive nickel-56 production
- Interaction-powered supernovae: Rise-time vs. peak-luminosity correlation and the shock-breakout velocity
- From core collapse to superluminous: The rates of massive stellar explosions from the Palomar Transient Factory
- Possible pair-instability supernovae at solar metallicity from magnetic stellar progenitors
- The superluminous supernova SN 2017egm in the nearby galaxy NGC 3191: a metal-rich environment can support a typical SLSN evolution
- An extremely energetic supernova from a very massive star in a dense medium
- The Hydrogen-Poor Superluminous Supernovae from the Zwicky Transient Facility Phase-I Survey: II. Light Curve Modeling and Characterization of Undulations
- The Hydrogen-Poor Superluminous Supernovae from the Zwicky Transient Facility Phase-I Survey: I. Light Curves and Measurements
- Bumpy Declining Light Curves Are Common in Hydrogen-poor Superluminous Supernovae
- Luminous Supernovae: Unveiling a Population Between Superluminous and Normal Core-collapse Supernovae
- SN 2018bsz: a Type I superluminous supernova with aspherical circumstellar material
- Towards Nebular Spectral Modeling of Magnetar-Powered Supernovae
- The broad-lined Type-Ic supernova SN 2022xxf with extraordinary two-humped light curves
- The Zwicky Transient Facility phase I sample of hydrogen-rich superluminous supernovae without strong narrow emission lines
- Polarimetry of Hydrogen-Poor Superluminous Supernovae
- Late-time H/He-poor circumstellar interaction in the type-Ic supernova SN 2021ocs: an exposed oxygen-magnesium layer and extreme stripping of the progenitor
- SN2017egm: A Helium-rich Superluminous Supernova with Multiple Bumps in the Light Curves
- Extremely energetic supernova explosions embedded in a massive circumstellar medium: the case of SN 2016aps
- Supernova 2020wnt: An Atypical Superluminous Supernova with a Hidden Central Engine
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